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February 9, 2026npj Science of Food11 citationsOpen Access

Adopting omics-based approaches to facilitate the establishment of microbial consortia to generate reproducible fermented foods with desirable properties

EZErkang ZhangMCMarcus J. ClaessonPCPaul D. Cotter

Key Points

  • The aim is to explore how omics-based approaches can enhance the establishment of microbial consortia for reproducible fermented foods.
  • Review advances in omics technologies relevant to microbial ecosystems.
  • Analyze the bipartite structure of defined microbial consortia (DMCs).
  • Discuss a multi-omics-guided strategy framed within the Assembly-Assessment-Redesign (A-A-R) workflow.
  • Highlight the significance of characterizing microbial composition for consistent fermentation outcomes.
  • Identify the core microbiome's role in fermentation performance and the supplementary microbiome's effect on flavor diversity.
  • Propose a systematic approach for precision fermentation leveraging omics insights.

Abstract

The quality of fermented foods is governed by the composition, function, and interactions of their microbial communities. However, fermentations carried out using traditional approaches are often variable with respect to their composition and are difficult to control, thereby limiting industrial reproducibility. Recent advances in omics technologies-including metagenomics, metatranscriptomics, metaproteomics, metabolomics, and culturomics-have greatly enhanced our ability to analyze and reconstruct the microbial ecosystems in fermented foods. This review first highlights the importance of omics analyses for characterizing microbial composition, metabolic potential, and functional interactions. It then discusses the bipartite structure of defined microbial consortia (DMCs), distinguishing between the core microbiome, comprising taxa consistently associated with fermentation performance, and the supplementary microbiome, consisting of variable species that influence flavor diversity and system stability. Finally, we describe a multi-omics-guided strategy for the design and refinement of DMCs, framed within the Assembly-Assessment-Redesign (A-A-R) workflow, which enables iterative optimization of microbial consortia for reproducible and desirable fermentation outcomes. Integrating omics insights with DMC engineering provides a systematic approach for precision fermentation, paving the way for next-generation fermented food production.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69897996f0ec2af6756e74d5https://doi.org/10.1038/s41538-026-00740-8
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